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Laser Lock-in Thermography for Fatigue Crack Detection in an Uncoated Metallic Structure

机译:激光锁定热成像技术用于未涂层金属结构中的疲劳裂纹检测

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This paper presents a noncontact laser lock-in thermography (LLT) technique for surface-breaking fatigue crack detection. LLT utilizes a modulated continuous wave (CW) laser as a heat source for lock-in thermography instead of commonly used flash and halogen lamps. LLT has following merits compared to conventional active thermography techniques: (1) the laser heat source can be precisely positioned at a long distance from a target structure thank to its directionality and low energy loss, (2) a large target structure can be inspected using a scanning laser heat source, (3) no special surface treatment is necessary to measure thermal wavefields and (4) background noises reflected from arbitrary surrounding heat sources can be eliminated. The LLT system is developed by integrating and synchronizing a modulated CW laser, galvanometer and infrared camera. Then, a holder exponent filter is proposed for crack identification, localization and quantification. Test results confirm that a surface-breaking fatigue crack on a steel plate is successfully evaluated using the proposed technique without any special surface treatment.
机译:本文提出了一种用于表面断裂疲劳裂纹检测的非接触式激光锁定热成像(LLT)技术。 LLT利用调制连续波(CW)激光器作为锁定热成像的热源,代替了常用的闪光灯和卤素灯。与传统的主动热成像技术相比,LLT具有以下优点:(1)由于其方向性和低能量损失,激光热源可以精确地定位在距目标结构很长的距离处;(2)可以使用以下方法检查大型目标结构扫描激光热源,(3)无需特殊表面处理即可测量热波场,并且(4)可以消除从周围任意热源反射的背景噪声。 LLT系统是通过集成和同步调制的CW激光器,检流计和红外热像仪而开发的。然后,提出了一种用于裂纹识别,定位和量化的支架指数过滤器。测试结果证实,使用本文提出的技术无需进行任何特殊的表面处理,即可成功评估钢板上的表面断裂疲劳裂纹。

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